首页> 外文会议>Annual conference exposition of Water Environment Federation >“MICROFILTRATION AND REVERSE OSMOSIS PILOT TESTING FOR INDIRECT POTABLE REUSE AT THE UNIVERSITY AREA JOINT AUTHORITY”
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“MICROFILTRATION AND REVERSE OSMOSIS PILOT TESTING FOR INDIRECT POTABLE REUSE AT THE UNIVERSITY AREA JOINT AUTHORITY”

机译:“微滤和反渗透试验试验试验,在大学联合权威处于间接饮用重用”

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As part of the implementation of Beneficial Reuse for the Centre Region of Pennsylvania, the University Area Joint Authority (UAJA) conducted long-term pilot testing of microfiltration (MF), ultrafiltration (UF), nanofiltration (NF), and reverse osmosis (RO) equipment. The pilot testing facility was constructed to determine the feasibility of reclaiming 3.0 Million Gallons per Day (MGD) of secondary effluent from the existing UAJA wastewater treatment facility for the purposes of water reuse and streamflow augmentation. This pilot testing, and its associated analysis, is known as the Phase I Microfiltration Pilot Testing and Phase II Nanofiltration/Reverse Osmosis Pilot Testing for the Beneficial Reuse Project. The Phase I Pilot Testing was conducted from November 1999 through March 2000, and the Phase II Pilot Testing began in May 2001 and will continue through December 2001. The Beneficial Reuse Project is the selected alternative of the Centre Region for the treatment and reuse of the additional 3.0 MGD of wastewater expected from growth and infilling of the existing UAJA sanitary sewer service area during the period of 2002 to 2020. As part of an ongoing analysis by UAJA, the Phase I and Phase II Pilot Testing served multiple purposes. These include permitting of advanced wastewater treatment technologies, equipment procurement and competitive bidding processes, and public relations and education. The Phase I Pilot Testing evaluated Microfiltration Units from numerous manufacturers, and eventually operated full-scale pilot units from U.S. Filter/MEMCOR, Pall Corporation, and Koch Membrane Systems. These units were operated for a period in excess of three months and were monitored by plant personnel and manufacturer’s technical staff. Operational data, including flux, transmembrane pressure (TMP), and reject flows, were maintained and utilized to verify performance. The data was then used to complete a present worth analysis for UAJA that identified the most cost-effective unit for long-term operation and production of reclaimed water. In addition, routine water sampling produced valuable data on the quality of the reclaimed product and was utilized in public education efforts to assist in the adoption and permitting of an indirect potable reuse project. With the selection of a microfiltration unit for preliminary treatment, the second stage treatment will be identified in the Phase II Pilot Testing. By comparing nanofiltration and reverse osmosis membranes from similar manufacturing processes, the pilot testing will verify if the method of softening by nanofiltration is acceptable and provides a stable
机译:作为宾夕法尼亚州宾夕法尼亚中心地区实施的有益重复使用的一部分,大学面积联合权威(UAJA)进行了微滤(MF),超滤(UF),纳米滤灰(NF)和反渗透(RO)的长期试验试验) 设备。建造试验试验设施,以确定从现有的UAJA废水处理设施中回收每天3000万加仑(MGD)的二次污水的可行性,以便水再利用和流流量增强。该试验检测及其相关分析称为有益再利用项目的II微滤膜试验检测和II期纳米滤光/反渗透试验试验。第一阶段预测从1999年11月到2000年3月进行,第二阶段试验试验于2001年5月开始,将于2001年12月继续。有益的再利用项目是中心地区的替代方案,用于治疗和重用的中心地区在2002年至2020年期间,额外的3.0 MGD的污水增长和缺少现有的Uaja卫生下水道服务区。作为UAJA的持续分析的一部分,第一阶段和第二阶段试验试验提供多种用途。这些包括允许先进的废水处理技术,设备采购和竞争性竞标流程以及公共关系和教育。 I阶段试验测试评估了许多制造商的微滤单元,最终从美国过滤器/ MEMCOR,PALL CORPORATION和KOCH膜系统中操作的全尺度导频单元。这些单位运营超过三个月的时间,由工厂人员和制造商的技术人员监测。维护并利用包括助焊剂,跨膜压力(TMP)和拒绝流动的操作数据,以验证性能。然后使用该数据来完成UAJA的现值分析,该uaja确定了最具成本效益的长期运作和再生水生产的单位。此外,常规水采样制定了关于再生产品质量的有价值的数据,并利用公共教育努力,协助采用和允许间接饮用再利用项目。通过选择用于初步处理的微滤单元,将在第二阶段试验试验中识别第二阶段治疗。通过将纳米滤灰和反渗透膜从类似的制造过程中进行比较,试验试验将验证是否可以通过纳滤软化的方法是可接受的并且提供稳定的

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